Descriptions

DEAD-box proteins utilize ATP to bind and remodel RNA and RNA-protein complexes. The Ded1/DDX3 subfamily of DEAD-box proteins is of particular interest as their function during protein translation, are essential for viability, and are frequently altered in human malignancies. <br>There is a unique interdomain interaction between the two ATPase domains (DEAD box helicase domain and helicase domain) in which the C-terminal helicase domain clashes with the RNA-binding surface. Destabilizing this interaction accelerates RNA duplex unwinding, suggesting that it is present in solution and inhibitory for catalysis. The N-terminal extension to the DEAD box helicase interacts with DEAD box helicase domain and C-terminal helicase domain, and stabilizes the autoinhibited state of DDX3X.

Autoinhibitory domains (AIDs)

Target domain

193-372 (DEAD box helicase domain)

Relief mechanism

Assay

Target domain

395-562 (C-terminal helicase domain)

Relief mechanism

Assay

Target domain

193-372 (DEAD box helicase domain);395-562 (C-terminal helicase domain)

Relief mechanism

Assay

Accessory elements

No accessory elements

Autoinhibited structure

Activated structure

1 structures for Q6Z4K6

Entry ID Method Resolution Chain Position Source
AF-Q6Z4K6-F1 Predicted AlphaFoldDB

No variants for Q6Z4K6

Variant ID(s) Position Change Description Diseaes Association Provenance
No variants for Q6Z4K6

No associated diseases with Q6Z4K6

3 regional properties for Q6Z4K6

Type Name Position InterPro Accession
domain Myosin head, motor domain 79 - 779 IPR001609
domain Myosin tail 846 - 1923 IPR002928
domain Myosin, N-terminal, SH3-like 32 - 81 IPR004009

Functions

Description
EC Number 3.6.4.13 Acting on ATP; involved in cellular and subcellular movement
Subcellular Localization
PANTHER Family
PANTHER Subfamily
PANTHER Protein Class
PANTHER Pathway Category No pathway information available

2 GO annotations of cellular component

Name Definition
nucleus A membrane-bounded organelle of eukaryotic cells in which chromosomes are housed and replicated. In most cells, the nucleus contains all of the cell's chromosomes except the organellar chromosomes, and is the site of RNA synthesis and processing. In some species, or in specialized cell types, RNA metabolism or DNA replication may be absent.
P granule A small cytoplasmic, non-membranous RNA/protein complex aggregate in the primordial germ cells of many higher eukaryotes.

4 GO annotations of molecular function

Name Definition
ATP binding Binding to ATP, adenosine 5'-triphosphate, a universally important coenzyme and enzyme regulator.
ATP hydrolysis activity Catalysis of the reaction
mRNA binding Binding to messenger RNA (mRNA), an intermediate molecule between DNA and protein. mRNA includes UTR and coding sequences, but does not contain introns.
RNA helicase activity Unwinding of an RNA helix, driven by ATP hydrolysis.

2 GO annotations of biological process

Name Definition
cell differentiation The cellular developmental process in which a relatively unspecialized cell, e.g. embryonic or regenerative cell, acquires specialized structural and/or functional features that characterize a specific cell. Differentiation includes the processes involved in commitment of a cell to a specific fate and its subsequent development to the mature state.
gamete generation The generation and maintenance of gametes in a multicellular organism. A gamete is a haploid reproductive cell.

27 homologous proteins in AiPD

UniProt AC Gene Name Protein Name Species Evidence Code
Q5W5U4 DDX4 Probable ATP-dependent RNA helicase DDX4 Bos taurus (Bovine) SS
Q6GVM6 DDX3Y ATP-dependent RNA helicase DDX3Y Pan troglodytes (Chimpanzee) SS
O15523 DDX3Y ATP-dependent RNA helicase DDX3Y Homo sapiens (Human) SS
Q9NQI0 DDX4 Probable ATP-dependent RNA helicase DDX4 Homo sapiens (Human) SS
O00571 DDX3X ATP-dependent RNA helicase DDX3X Homo sapiens (Human) EV
P16381 D1Pas1 Putative ATP-dependent RNA helicase Pl10 Mus musculus (Mouse) SS
Q61496 Ddx4 ATP-dependent RNA helicase DDX4 Mus musculus (Mouse) SS
Q62095 Ddx3y ATP-dependent RNA helicase DDX3Y Mus musculus (Mouse) SS
Q62167 Ddx3x ATP-dependent RNA helicase DDX3X Mus musculus (Mouse) SS
Q6GWX0 DDX4 Probable ATP-dependent RNA helicase DDX4 Sus scrofa (Pig) SS
Q2R1M8 Os11g0599500 DEAD-box ATP-dependent RNA helicase 52C Oryza sativa subsp. japonica (Rice) SS
Q75HJ0 PL10A DEAD-box ATP-dependent RNA helicase 37 Oryza sativa subsp. japonica (Rice) SS
Q5QMN3 Os01g0197200 DEAD-box ATP-dependent RNA helicase 20 Oryza sativa subsp japonica (Rice) PR
Q5JK84 AIP2 DEAD-box ATP-dependent RNA helicase 15 Oryza sativa subsp japonica (Rice) PR
Q5VNM3 EIF4A3A Eukaryotic initiation factor 4A-III homolog A Oryza sativa subsp japonica (Rice) PR
Q0E2Z7 Os02g0201900 DEAD-box ATP-dependent RNA helicase 41 Oryza sativa subsp japonica (Rice) PR
Q10I26 EIF4A3B Eukaryotic initiation factor 4A-III homolog B Oryza sativa subsp japonica (Rice) PR
Q10RI7 Os03g0158200 DEAD-box ATP-dependent RNA helicase 38 Oryza sativa subsp japonica (Rice) PR
Q5Z6G5 Os06g0697200 DEAD-box ATP-dependent RNA helicase 35B Oryza sativa subsp japonica (Rice) PR
Q0JM17 AIP1 DEAD-box ATP-dependent RNA helicase 56 Oryza sativa subsp japonica (Rice) PR
Q5N7W4 Os01g0911100 DEAD-box ATP-dependent RNA helicase 30 Oryza sativa subsp japonica (Rice) PR
Q0E3X4 Os02g0150100 DEAD-box ATP-dependent RNA helicase 35A Oryza sativa subsp japonica (Rice) PR
O01836 glh-3 ATP-dependent RNA helicase glh-3 Caenorhabditis elegans PR
D0PV95 laf-1 ATP-dependent RNA helicase laf-1 Caenorhabditis elegans SS
Q84W89 RH37 DEAD-box ATP-dependent RNA helicase 37 Arabidopsis thaliana (Mouse-ear cress) SS
Q8LA13 RH11 DEAD-box ATP-dependent RNA helicase 11 Arabidopsis thaliana (Mouse-ear cress) SS
Q9M2F9 RH52 DEAD-box ATP-dependent RNA helicase 52 Arabidopsis thaliana (Mouse-ear cress) SS
10 20 30 40 50 60
MRSSWADSAA NAEESAPAAA ANHGNSRLPR SSYVPPHLRG QAAPAAPAQA GALPSAAAAA
70 80 90 100 110 120
QPSVGQPGVV GGPRWAGIVN GGGGGGGGSV GGSRQGFGAG GRGGGGGGGG GAWNSRPGGW
130 140 150 160 170 180
DRRDREPDPF ANSEAAEVDF EGENTGINFE AYEDIPVETS GHDVPPPANT FAEIDLGDAL
190 200 210 220 230 240
NENIRRCKYV KPTPVQRYAI PISIAGRDLM ACAQTGSGKT AAFCFPIISG IMRSRPPPRS
250 260 270 280 290 300
RGSRTAYPLA LILSPTRELS VQIHEEARKF AYQTGVKVVV AYGGAPITQQ LRELERGVEI
310 320 330 340 350 360
LVATPGRLMD LLERARVSLQ MIKYLALDEA DRMLDMGFEP QIRKIVEQMD MPPRGERQTM
370 380 390 400 410 420
LFSATFPKEI QRMASDFLAD YIFLAVGRVG SSTDLIVQRV EFVLDADKRS YLMDLLHAQR
430 440 450 460 470 480
ANGTHGKQAL TLVFVETKRG ADALENWLYN NGFPATSIHG DRTQQEREYA LRSFKSGATP
490 500 510 520 530 540
ILVATDVAAR GLDIPHVAHV INFDLPNDID DYVHRIGRTG RAGKSGLATA FFNESNTPLA
550 560 570 580 590 600
RPLSELMQEA NQEVPQWLER YAARSSFGGG GGRNRRSGGG ARFGGRDFRR DRGSGGGGYG
610 620 630
GGGGGYGGGG YGGGGGGGGY GGGSSYGGGG QGFSSAWD